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BMC GENOMICS, ISSN 1471-2164, 06/2019, Volume 20, Issue Suppl 5, pp. 425 - 14
Journal Article
The New Phytologist, ISSN 0028-646X, 4/2011, Volume 190, Issue 2, pp. 340 - 350
Journal Article
Plant, Cell and Environment, ISSN 0140-7791, 04/2010, Volume 33, p. 566
Mechanisms of Cl.sup.- transport in plants are poorly understood, despite the importance of minimizing Cl.sup.- toxicity for salt tolerance. This review... 
Salinity
Journal Article
Environmental and Experimental Botany, ISSN 0098-8472, 01/2015, Volume 109, pp. 89 - 98
•15 lines of Melilotus siculus were grown in saline (200mM NaCl) hypoxic conditions.•Levels of root porosity were high (18–25%) for all accessions.•Shoot dry... 
Secondary aerenchyma | Waterlogging | Root porosity | Salt stress | Antagonistic interaction | Additive interaction | HOMEOSTASIS | TOLERANCE | PERSISTENCE | ANNUAL PASTURE LEGUMES | AERENCHYMATOUS PHELLEM | MECHANISMS | WHEAT | PLANT SCIENCES | ENVIRONMENTAL SCIENCES | TRANSPORT | PLANTS | O-2 DEFICIENCY | Plant physiology | Salinity
Journal Article
Methods in molecular biology (Clifton, N.J.), 2010, Volume 639, pp. 371 - 382
The control of Na(+) and Cl(-) uptake from soils, and the partitioning of these ions within plants, is an essential component of salinity tolerance. Genetic... 
Potassium - metabolism | Solubility - drug effects | Sodium Chloride - pharmacology | Ions | Colorimetry | Spectrophotometry - methods | Plants - drug effects | Sodium - metabolism | Spectrophotometry, Atomic | Plants - metabolism | Reference Standards | Chlorides - metabolism | Photometry
Journal Article
Physiologia Plantarum, ISSN 0031-9317, 08/2010, Volume 139, Issue 4, p. 358
Salinity and waterlogging interact to reduce growth for most crop and pasture species. The combination of these stresses often cause a large increase in the... 
Universities and colleges | Organic farming | Salinity
Journal Article
New Phytologist, ISSN 0028-646X, 04/2011, Volume 190, p. 340
Aerenchymatous phellem (secondary aerenchyma) has rarely been studied in roots. Its formation and role in internal aeration were evaluated for Melilotus... 
Legumes | Beans | Universities and colleges | Porosity | Organic farming | Mimosaceae
Journal Article
Environmental and Experimental Botany, ISSN 0098-8472, 2012, Volume 77, pp. 175 - 184
► Melilotus siculus is highly salt-tolerant; biomass at 450 mM NaCl was 30% of control. ► M. siculus is tolerant to combined salinity and waterlogging. ► M.... 
Melilotus | Chloride | Sodium | Salinity tolerance | Waterlogging tolerance | Pasture legume | O-2 TRANSPORT | LOTUS-TENUIS | MECHANISMS | HALOPHYTES | HYPOXIA | SALT TOLERANCE | PLANT SCIENCES | NITROGEN-FIXATION | ENVIRONMENTAL SCIENCES | PLANTS | BALANSA CLOVER | STRESS | Legumes | Beans | Dichloropropane | Plant physiology | Laws, regulations and rules | Growth | Analysis | Chlorides | Porosity | Mimosaceae | Sea-water | Salinity
Journal Article